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Hui Zeng

Department of Physics
Yangtze University

Publications

[1] Jianwei Wei, Hui Zeng, Lichun Pu, Juwu Liang, Huifang Hu, Ping Peng. The Effects of Co-Doping of B and N on the Electronic Transport of Single-Walled Carbon Nanotubes. Mod. Phys. Lett. B, 25(14):1211-1218 (2011)

[2] Hui Zeng, Jun Zhao, Huifang Hu, Jean-Pierre Leburton. Atomic Vacancy Defects in the Electronic Properties of Semi-Metallic Carbon Nanotubes. J. Appl. Phys., 109(8):083716 (2011)

[3] J.W. Wei, Hui Zeng, L.C. Pu, J.W. Liang, P. Peng. Electronic and Optical Properties of the H2O adsorbed the B-N-C Nanotubes. Eur. Phys. J. B, 81(1): 133-136 (2011)

[4] Hui Zeng, Jean-Pierre Leburton, Yang Xu, Jianwei Wei. Defect Symmetry Influence on Electronic Transport of Zigzag Nanoribbons. Nanoscale Research Lett., 6:254 (2011)

[5] Hui Zeng, Jun Zhao, Jianwei Wei. Electronic Transport Properties of Graphene Nanoribbons with Anomalous Edges. Eur. Phys. J. Appl. Phys., 53(2):20602 (2011)

[6] Hui Zeng, Jun Zhao, Jianwei Wei, Huifang Hu. Effect of N doping and Stone-Wales defects on the Electronic Properties of Graphene Nanoribbons. Eur. Phys. J. B, 79(3): 335-340 (2011)

[7] Hui Zeng, Jean-Pierre Leburton, Huifang Hu, Jianwei Wei. Vacancy Cluster-Limited Electronic Transport in Metallic Carbon Nanotube. Solid State Communications, 151(1):9-12 (2011)

[8] Jun Zhao, Hui Zeng, Xinlu Cheng. Bond Dissociation Energies for Removal of the Hydroxyl Group in Some Alcohols from Quantum Chemical Calculations. International Journal of Quantum Chemistry. International Journal of Quantum Chemistry, (2011)

[9] Jun Zhao, Hui Zeng, Zhenghe Zhu. A theoretical study of the accurate analytic potential energy curve and spectroscopic properties for AlF (X1Σ+). Computational and Theoretical Chemistry, 963(1): 130-134 (2011)

[10] Zhiyong Wang, Huifang Hu, Hui Zeng. The Electronic Properties of Graphene Nanoribbons with Boron/Nitrogen Codoping. Appl. Phys. Lett., 96(24):243110 (2010)

[11] Hui Zeng, Huifang Hu, Jianwei Wei, Zhiyong Wang. Transport Properties of Single-Walled Carbon Nanotube with Intramolecular Junctions. Mod. Phys. Lett. B, 24(24):2445-2455 (2010)

[12] Hui Zeng, Huifang Hu, Jean-Pierre Leburton. Chirality Effects in Atomic Vacancy-Limited Transport in Metallic Carbon Nanotubes. ACS Nano, 4(1): 292-296 (2010)

[13] Jianwei Wei, Huifang Hu, Zhiyong Wang, Hui Zeng, Yan Wei, Jinfeng Jia. Effects of Nitrogen-Vacancy Complex Defects on the Electronic Transport of Carbon Nanotube. Appl. Phys. Lett., 94(10): 102108 (2009)

[14] Jianwei Wei, Huifang Hu, Hui Zeng, Zhipeng Zhou, Weiwei Yang, Ping Peng. Effects of Nitrogen Substitutional Doping on the Electronic Transport of Carbon Nanotubes. Physica E, 40(3):462-466 (2008)

[15] Hui. Zeng, Huifang. Hu, Jianwei. Wei, Weiwei Yang, Ping Peng. Quantum Transport Properties of Carbon Nanotube with Topologic Defects. Eur. Phys. J. Appl. Phys., 43(1):19-22 (2008)

[16] Jianwei Wei, Huifang Hu, Hui Zeng, Zhiyong Wang, Lei Wang, Peng Ping. Effects of Nitrogen in Stone-Wales Defect on the Electronic Transport of Carbon Nanotubes. Appl. Phys. Lett., 91(9):092121 (2007)

[17] Jianwei Wei, Huifang Hu, Hui Zeng, Zhiyong Wang, Lei Wang, Lijuan Zhang. Influence of Boron Distribution on the Transport of Single-Walled Carbon Nanotubes. Appl. Phys. A, 89(3):789-792 (2007)


Member
Grade: Member

Member since June 25, 2011
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